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Open Source Power Delivery Software Enables Code Integration for USB System Differentiation
With its PSF solution, Microchip is the first to offer a comprehensive programming environment and code base for Power Delivery

USB Type-C with Power Delivery (PD) and open source software are two technologies leading the next wave of wired connectivity. With Microchip Technology Inc.’s (Nasdaq: MCHP) new Power Delivery Software Framework (PSF), designers can now modify and own the IP in their USB-C PD systems. By merging their proprietary code with Microchip’s fully functionable PD stack, designers have the ultimate flexibility for creating differentiated product offerings while choosing from a wide variety of Microchip SmartHubs, microcontrollers (MCUs) and standalone PD solutions for their USB systems.

Microchip’s PSF solution offers both an open-source code base for power delivery and a comprehensive programming environment, removing the need for manufacturer dependence and making it easy for users to program MCUs and immediately modify PD code as their system evolves. Harnessing the benefits of this industry-changing solution, customers can now determine their own product destiny, reducing time to market and overall bill of materials (BOM).

Leveraging both a software and hardware framework, developers can also choose from an expanded family of Microchip controller options to host PD functionality, including the new UPD301B and UPD301C standalone PD controllers. The PD architecture’s open approach enables customers to easily add a USB-C/PD port to a wide range of embedded applications, while also allowing customers to reallocate unused pins or CPU memory to other system functions. A range of Microchip SAM and PIC® MCUs and dsPIC® Digital Signal Controllers (DSCs) are supported. The PSF solution gives designers the option to run PD on an existing Microchip MCU infrastructure by adding the UPD350 PD transceiver or by integrating PD into more complex product offerings with proprietary system code.

 “With our new PD Software Framework, all Microchip MCUs and standalone controllers that support USB-C now share the same PD code base,” said Charles Forni, vice president of Microchip’s USB and networking business unit. “This code is provided free to customers and is easy to configure and modify, enabling our customers to implement new features and system updates without the need for a manufacturer to customize the code for them. Microchip’s PSF offering changes the way USB-C PD is integrated into customer systems.”

Development Tools

The PSF software solution is supported by Microchip’s MPLAB® X IDE development environment. The PSF evaluation board features the SAMD20 MCU and the UPD350 PD PHY and is available today.

Pricing and Availability

Microchip’s open source Power Delivery Software framework (PSF) is available for download on Microchip’s website at no cost. The UPD301C is available for $1.50 in 10,000-unit quantities.

For additional information, contact a Microchip sales representative, authorized worldwide distributor or visit Microchip’s website. To purchase products mentioned here, click to order now or contact a Microchip authorized distributor.

2021041401 / 14.04.2021 / Electronic-components / Microchip Technology Inc. /

Microchip Introduces Industry’s Highest-Performance 16-Channel PCIe® Gen 5 Enterprise NVMe® SSD Controller
The Flashtec® NVMe 4016 controller enables unparalleled performance and a rich "cloud-ready" feature set including industry-leading security features.

Industry’s Only Family of Standard Non-Hybrid Space-Grade Power Converters Now Includes 28 Volt (V)-Input Radiation-Tolerant Options
Microchip’s alternatives to inflexible hybrid-style converters improve design flexibility while reducing system size, cost and development time

New In-Circuit Emulator (ICE) Boosts Productivity with Feature-Rich Programming and Debugging
Microchip’s MPLAB ICE 4 In-Circuit Emulator is a full emulation, programming and debugging system featuring wireless connectivity, power debugging and real-time code profiling using trace

High-Precision Voltage Reference IC Provides Very-Low Drift for Extended-Temperature Automotive Applications
New device completes Microchip’s family of Vref products providing increased reliability and AEC-Q100 qualification

Microchip and Acacia Collaborate to Enable Market Transition to 400G Pluggable Coherent Optics for Data Center Routing, Switching and Metro OTN Platforms
Solutions enable encrypted 100/400 GbE, FlexE and Flexible OTN interfaces for 400ZR, OpenZR+ and Open ROADM applications

Reduce Switching Losses up to 50% While Accelerating Time to Market with the First Fully Configurable Digital Gate Driver for Silicon Carbide MOSFETs – Now Production Ready
New technology enables electric buses and other e-transportation power systems to meet and exceed stringent environmental conditions while maximizing efficiency

Microchip Unveils Industry’s Most Compact 1.6T Ethernet PHY with Up to 800 GbE Connectivity for Cloud Data Centers, 5G and AI
META-DX2L enables routers, switches and line cards to double their bandwidth by transitioning to 112G PAM4 interface rates

Smart High Level Synthesis (HLS) Tool Suite Enables C++ Based Algorithm Development Using Microchip’s PolarFire® FPGA Platform
Enhances Accessibility to PolarFire FPGAs for Hardware Acceleration in Edge Compute Systems

New Chip Scale Atomic Clock (CSAC) Provides Wider Operating Temperatures, Faster Warm-up and Improved Frequency Stability in Extreme Environments
Microchip’s SA65 CSAC for military and industrial systems features ultra-high precision and low power consumption

New I2C Serial EEPROM Introduces 3.4MHz High-Speed Mode Operation, Software Write-Protection and Factory Programmed Serial Numbers
Industry First 3.4 MHz I2C Serial EEPROM Closes the Gap in Trade-Offs Between SPI and I2C Protocols

Mid-Range FPGAs Reach the Next Power and Performance Milestone for Edge Compute Systems
Microchip’s new low-density PolarFire® devices consume half the static power of alternatives while providing world’s smallest thermal footprint

First Aerospace-qualified Baseless Power Module Family Improves Aircraft Electrical System Efficiency
Microchip’s BL1, BL2 and BL3 family, developed with the Clean Sky consortium, is qualified to stringent aerospace standards for AC-to-DC and DC-to-AC power conversion

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Intel Alder Lake Product Video


Brand new Qseven upgrade: NXP i.MX 8 | conga-QMX8-Plus


ENERGETAB 2021 Poland, Bielsko Biala, 14.9.-16.9.2021


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Analog Devices


ASRock Industrial


NVIDIA


Yamaichi Electronics USA Inc.


PICMG


Laird Thermal Systems


HARTING


Jenoptik


A.P.O. - ELMOS v.o.s.


MACH SYSTEMS s.r.o.


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